Approximations of Dynamical Systems and Their Applications to Cryptography

Author:

Amigó J. M.1,Szczepański J.23

Affiliation:

1. Operations Research Center, Miguel Hernández University, 03202 Elche, Spain

2. Institute of Fundamental Technological Research, Polish Academy of Sciences, 00-049 Warsaw, Poland

3. Centre of Trust and Certification "Centrast" Co., Poland

Abstract

During the last years a new approach to construct safe block and stream ciphers has been developed using the theory of dynamical systems. Since a block cryptosystem is generally, from the mathematical point of view, a family (parametrized by the keys) of permutations of n-bit numbers, one of the main problems of this approach is to adapt the dynamics defined by a map f to the block structure of the cryptosystem. In this paper we propose a method based on the approximation of f by periodic maps Tn (v.g. some interval exchange transformations). The approximation of automorphisms of measure spaces by periodic automorphisms was introduced by Halmos and Rohlin. One important aspect studied in our paper is the relation between the dynamical properties of the map f (say, ergodicity or mixing) and the immunity of the resulting cipher to cryptolinear attacks, which is currently one of the standard benchmarks for cryptosystems to be considered secure. Linear cryptanalysis, first proposed by M. Matsui, exploits some statistical inhomogeneities of expressions called linear approximations for a given cipher. Our paper quantifies immunity to cryptolinear attacks in terms of the approximation speed of the map f by the periodic Tn. We show that the most resistant block ciphers are expected when the approximated dynamical system is mixing.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Modeling and Simulation,Engineering (miscellaneous)

Reference20 articles.

1. CLARIFYING CHAOS: EXAMPLES AND COUNTEREXAMPLES

2. Ergodic Theory

3. Symmetric Ciphers Based on Two-Dimensional Chaotic Maps

4. T. Habutsu, Eurocrypt'91 (Springer-Verlag, 1991) pp. 127–136.

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